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Analysis Method of Beam Pointing Stability Based on Optical Transmission Matrix

机译:基于光传输矩阵的光束指向稳定性分析方法

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Quite a lot of factors will make effects on beam pointing stability of an optical system, Among them, the element tolerance is one of the most important and common factors. In some large laser systems, it will make final micro beams spot on the image plane deviate obviously. So it is essential for us to achieve effective and accurate analysis theoretically on element tolerance. In order to make the analysis of beam pointing stability convenient and theoretical, we consider transmission of a single chief ray rather than beams approximately to stand for the whole spot deviation.According to optical matrix, we also simplify this complex process of light transmission to multiplication of many matrices. So that we can set up element tolerance model, namely having mathematical expression to illustrate spot deviation in an optical system with element tolerance. In this way, we can realize quantitative analysis of beam pointing stability theoretically. In second half of the paper, we design an experiment to get the spot deviation in a multipass optical system caused by element tolerance, then we adjust the tolerance step by step and compare the results with the datum got from tolerance model, finally prove the correction of tolerance model successfully.
机译:很多因素都会影响光学系统的光束指向稳定性,其中,元件容限是最重要,最常见的因素之一。在某些大型激光系统中,它将使像面上的最终微束光斑明显偏离。因此,从理论上对元素公差进行有效而准确的分析对于我们至关重要。为了使光束指向稳定性的分析更加方便和理论,我们考虑透射单个主光线而不是近似代表整个光斑偏差的光束。根据光学矩阵,我们还将这种复杂的光传输过程简化为乘法许多矩阵这样我们就可以建立元件公差模型,即具有数学表达式来说明具有元件公差的光学系统中的光斑偏差。这样,理论上就可以实现对光束指向稳定性的定量分析。在本文的下半部分,我们设计了一个实验,以求出由元件公差引起的多通光学系统中的光斑偏差,然后逐步调整公差,并将结果与​​公差模型中的基准进行比较,最后证明校正是正确的。模型的成功。

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